Diagnostic sensitivity of subjective and quantitative laryngeal ultrasonography for recurrent laryngeal neuropathy in horses

Vet Radiol Ultrasound. 2012 Nov-Dec;53(6):660-6. doi: 10.1111/j.1740-8261.2012.01974.x. Epub 2012 Sep 18.

Abstract

Recurrent laryngeal neuropathy (RLN) is the most common cause of laryngeal hemiplegia in horses and causes neurogenic atrophy of the intrinsic laryngeal muscles, including the cricoarytenoideus lateralis muscle. Recurrent laryngeal neuropathy results in paresis to paralysis of the vocal fold and arytenoid cartilage, which limits performance through respiratory compromise. Ultrasound has previously been reported to be a useful diagnostic technique in horses with RLN. In this report, the diagnostic sensitivity of subjective and quantitative laryngeal ultrasonography was evaluated in 154 horses presented for poor performance due to suspected upper airway disease. Ultrasonographic parameters recorded were: cricoarytenoideus lateralis echogenicity (subjective and quantitative), cricoarytenoideus lateralis thickness, vocal fold movement, and arytenoid cartilage movement. Ultrasonographic parameters were then compared with laryngeal grades based on resting and exercising upper airway endoscopy. Subjectively increased left cricoarytenoideus lateralis echogenicity yielded a sensitivity of 94.59% and specificity of 94.54% for detecting RLN, based on the reference standard of exercising laryngeal endoscopy. Quantitative left cricoarytenoideus lateralis echogenicity values differed among resting laryngeal grades I-IV. Findings from this study support previously published findings and the utility of subjective and quantitative laryngeal ultrasound as diagnostic tools for horses with poor performance.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Arytenoid Cartilage / diagnostic imaging
  • Horse Diseases / diagnostic imaging*
  • Horses
  • Sensitivity and Specificity
  • Ultrasonography
  • Vocal Cord Paralysis / diagnostic imaging
  • Vocal Cord Paralysis / veterinary*
  • Vocal Cords / diagnostic imaging